CSIR-Central Electrochemical Research Institute-Chennai Unit , CSIR-Madras Complex , Taramani, Chennai 600113 , India.
Academy of Scientific and Innovative Research (AcSIR), CSIR-CECRI , Karaikudi 630003 , India.
ACS Appl Mater Interfaces. 2018 Jun 13;10(23):19721-19729. doi: 10.1021/acsami.8b04888. Epub 2018 May 29.
Minimizing the shuttle effect by constraining polysulfides to the cathode compartment and activating the passive layer between cathode and separator are highly important for improving the Li-S cell performance, Coulombic efficiency, and cycle life. Here, we report a submicron thin coating of permselective sulfonated poly(ether ether ketone) (SPEEK) composite layer on the separator that would reduce polysulfide crossover, imparting a significant improvement in cycle life. It is observed that SPEEK increases the stability, and adding Nafion improves the capacity value. Among different ratios of Nafion and SPEEK (25:75, 50:50, and 75:25), the composite with a SPEEK/Nafion ratio of 50:50 showed a controlled shuttle effect with a stable cell capacity of 600 mA h g up to 300 cycles. This modified separator with permselective coatings not only reduces the polysulfide shuttle but also improves the wettability and interfacial contact, which results in an improvement in average cell potential and lithium diffusivity. It is demonstrated here that the combination of functional (ionomer coating on separator) and nonfunctional (extra cathode layer) physical barriers effectively suppresses the polysulfide crossover and improves the electrochemical performance of Li-S batteries. The cell shows an initial capacity of 1300 mA h g and a capacity retention of 650 mA h g over 500 cycles with a 6 mg/cm sulfur loading.
通过将多硫化物限制在阴极隔室并激活阴极和隔板之间的无源层,可以最大程度地减少穿梭效应,这对于提高 Li-S 电池的性能、库仑效率和循环寿命非常重要。在这里,我们报告了一种在隔板上涂覆亚微米级的选择性磺化聚(醚醚酮)(SPEEK)复合层,该复合层可以减少多硫化物的穿梭,显著提高循环寿命。结果表明,SPEEK 提高了稳定性,并且添加 Nafion 提高了容量值。在不同的 Nafion 和 SPEEK 比例(25:75、50:50 和 75:25)中,SPEEK/Nafion 比例为 50:50 的复合层表现出可控的穿梭效应,稳定的电池容量高达 600 mA h g,可达到 300 个循环。这种具有选择性涂层的改性隔板不仅减少了多硫化物的穿梭,而且提高了润湿性和界面接触,从而提高了平均电池电势和锂离子扩散率。结果表明,功能(隔板上的离聚物涂层)和非功能(额外的阴极层)物理障碍的结合有效地抑制了多硫化物的穿梭,并提高了 Li-S 电池的电化学性能。该电池在 6 mg/cm 的硫负载下,初始容量为 1300 mA h g,经过 500 个循环后,容量保持率为 650 mA h g。